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24 pages, 3976 KB  
Review
Biotransformation of Plant-Based Substrates by Water Kefir: Micro-Ecological Mechanisms and Sensory Quality Remodeling
by Da Ma, Ruidong Yang, Yuanchi Wang and Yin Zheng
Fermentation 2026, 12(9), 396; https://doi.org/10.3390/fermentation12090396 - 23 Aug 2026
Viewed by 235
Abstract
The development of plant-based functional beverages is often limited by inherent matrix defects, particularly undesirable off-flavors, astringency, and colloidal instability. Water kefir (WK), a highly resilient multispecies symbiotic consortium, offers a robust biorefining platform to address these challenges. This review systematically elucidates the [...] Read more.
The development of plant-based functional beverages is often limited by inherent matrix defects, particularly undesirable off-flavors, astringency, and colloidal instability. Water kefir (WK), a highly resilient multispecies symbiotic consortium, offers a robust biorefining platform to address these challenges. This review systematically elucidates the underlying micro-ecological logic and biochemical mechanisms of WK-mediated plant matrix remodeling. We first detail how spatial niche differentiation and cross-feeding networks among lactic acid bacteria, yeasts, and acetic acid bacteria drive ecological homeostasis. Next, we highlight core molecular events that elevate sensory quality: protein unfolding for off-flavor elimination, enzymatic depolymerization of phenolics to mitigate astringency, and exopolysaccharide synthesis for rheological and flavor diffusion control. Finally, to overcome industrial scale-up challenges, we outline a precision fermentation framework, integrating systems multi-omics, real-time biomimetic monitoring, and sensory topological modeling. Ultimately, this synthesis provides theoretical guidance for the reverse flavor engineering and targeted nutritional design of novel plant-based beverages. Full article
(This article belongs to the Section Fermentation for Food and Beverages)
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19 pages, 1065 KB  
Article
The Influence of Incorporating Essential Plant Oils in the Lactic Fermentation Process of Cabbage on the Quality of Sauerkraut
by Felicia Tuțulescu, Mira Elena Ionică and Felicia Stoica
Foods 2026, 15(15), 2746; https://doi.org/10.3390/foods15152746 - 5 Aug 2026
Viewed by 361
Abstract
Cabbage (Brassica oleracea var. capitata) is considered a healthy vegetable due to its chemical composition and high nutritional value, owing to its main constituents of carbohydrates and dietary fiber and the fact that it is also a source of ascorbic acid. [...] Read more.
Cabbage (Brassica oleracea var. capitata) is considered a healthy vegetable due to its chemical composition and high nutritional value, owing to its main constituents of carbohydrates and dietary fiber and the fact that it is also a source of ascorbic acid. The resulting product, sauerkraut, is low-calorie and has a long shelf life. Lactic acid bacteria play the most important role in cabbage fermentation, and their activity is influenced by physical factors such as temperature and chemical factors such as salt concentration and the addition of spices, which may inhibit undesirable microflora, in addition to their flavoring effect. This study explores the impact of incorporating essential oils into sauerkraut production on the lactic acid bacteria that drive cabbage fermentation. It also analyzes how these oils affect the primary chemical components of sauerkraut, including total soluble solids, total phenolics, and antioxidant activity. Essential oils from thyme, dill, wild thyme, laurel, and basil are tested. Incorporating essential oils into cabbage before fermentation may partially inhibit or slow the growth of bacteria involved in the fermentation process while also contributing to the improved flavor profile of the final product. Full article
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50 pages, 1281 KB  
Review
Fermentation—A Potential Game Changer in the Development of Plant-Based Cream Cheese Alternatives
by Sophie Libberecht, Julia Matysek, Robert Sevenich, Cornelia Rauh and Myriam Loeffler
Foods 2026, 15(15), 2692; https://doi.org/10.3390/foods15152692 - 30 Jul 2026
Viewed by 683
Abstract
Plant-based cream cheese alternatives are gaining popularity, yet replicating the sensory and nutritional attributes of dairy cream cheese remains challenging. Plant proteins often impart undesirable flavors and differ structurally from dairy proteins, resulting in weaker emulsifying and gelling properties, as well as compromised [...] Read more.
Plant-based cream cheese alternatives are gaining popularity, yet replicating the sensory and nutritional attributes of dairy cream cheese remains challenging. Plant proteins often impart undesirable flavors and differ structurally from dairy proteins, resulting in weaker emulsifying and gelling properties, as well as compromised product structure and texture. Hydrocolloids are commonly used to improve organoleptic properties and/or spreadability but may introduce gummy textures and conflict with clean-label expectations. Fermentation represents a promising strategy to address these challenges. Exopolysaccharide (EPS)-producing starter cultures can naturally enhance texture. Depending on EPS type, concentration, molecular structure, and interactions with the food matrix, fermentation can improve creaminess, viscosity, and water-holding capacity while supporting cleaner-label formulations. In addition, fermentation may improve flavor, protein digestibility, and amino acid bioavailability and reduce antinutritional factors, while EPS may confer health-related benefits. This review examines how fermentation, particularly EPS biosynthesis, can improve the overall quality and texture of plant-based cream cheese alternatives, considering current market formulations. The reviewed literature indicates that fermentation and in situ-formed EPS offer potential, although their effects depend on strain selection, matrix composition, and processing conditions. Pulsed electric fields and ultrasound may enhance EPS production, representing an underexplored field of research. Future studies should assess these strategies in complex plant-based matrices to clarify matrix-specific effects. Full article
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37 pages, 1627 KB  
Article
Formulation and Ripening Duration of Italian-Style Ostrich Salami: Impact on Physicochemical Quality and Sensory Traits
by Enrico Novelli, Marco Cullere, Louwrens Hoffman, Stefania Balzan and Antonella Dalle Zotte
Foods 2026, 15(14), 2462; https://doi.org/10.3390/foods15142462 - 11 Jul 2026
Viewed by 455
Abstract
The present research investigated the effects of two pork back-fat concentrations (30% fat, FAT30, and 40% fat, FAT40), two sodium chloride levels (2.4% and 2.6%), and two starter culture combinations (Lactobacillus curvatus/Staphylococcus xylosus; LAB6, and Lactobacillus sakei/Staphylococcus [...] Read more.
The present research investigated the effects of two pork back-fat concentrations (30% fat, FAT30, and 40% fat, FAT40), two sodium chloride levels (2.4% and 2.6%), and two starter culture combinations (Lactobacillus curvatus/Staphylococcus xylosus; LAB6, and Lactobacillus sakei/Staphylococcus xylosus; LAB8) on ripened ostrich salami. Salami samples were formulated without nitrite and nitrate, which aligns with consumer demands for healthier, cleaner-label meat products. It is specified that the present experiment is structured with a single-batch-per-treatment combination: this was due to structural processing limitations in the production facility, which was an artisanal laboratory and not an industry plant. After 10 weeks of ripening, FAT30 salami showed higher values of pH, salt content, water-phase salt (WPS), α-tocopherol, free fatty acids (FFA), and secondary lipid oxidation products (TBARS) compared with FAT40 salami. Conversely, FAT40 salami exhibited higher water activity (aw), moisture-to-protein ratio (M:P), conjugated dienes (CD; primary lipid oxidation products), and non-protein nitrogen (NPN) than FAT30 salami. Both NaCl concentration and starter culture type influenced several of the measured variables. Specifically, salami containing 2.4% salt exhibited higher FFA and CD values than the formulation containing 2.6% salt. Likewise, the LAB8 starter culture resulted in higher CD and NPN levels compared with LAB6. Fat inclusion level significantly affected sensory characteristics. FAT40 salami exhibited greater intensities of gamy, metallic, fatty, and moldy flavors, as well as higher overall off-flavor intensity, tenderness, and juiciness. In contrast, FAT30 salami was characterized by greater cohesiveness and a more pronounced ripening flavor. The 2.6% sodium chloride treatment resulted in greater color homogeneity, higher odor intensity, and stronger rancid notes, while reducing the perception of metallic, fatty, and moldy flavors compared with the 2.4% treatment. Salami inoculated with LAB6 exhibited a higher intensity of off-flavors than the formulation produced with LAB8. Moreover, several significant interactions among the three experimental factors were observed. After 20 weeks of ripening, the effects observed after 10 weeks for most physicochemical parameters were largely maintained. However, FFA and CD concentrations (both below the limit of quantification) no longer differed between the two fat inclusion levels. Sensory evaluation revealed that the differences between FAT30 and FAT40 in undesirable flavor attributes disappeared over time, whereas the perception of ripening and maturity became even more pronounced in FAT30 salami. Regarding FA composition, FAT30 salami contained higher proportions of saturated FA and polyunsaturated FA, whereas FAT40 salami was characterized by a higher monounsaturated FA content and more favorable lipid quality indices. Full article
(This article belongs to the Section Meat)
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15 pages, 657 KB  
Article
Impact of Fruit-Based Sugar Substitutes on Meat Tenderization and Quality Characteristics of Pork Bulgogi
by Inmyoung Park and Ok Kyung Park
Foods 2026, 15(13), 2319; https://doi.org/10.3390/foods15132319 - 30 Jun 2026
Viewed by 353
Abstract
This study examined the effects of soy sauce-based marinades containing fruit extracts (pineapple, apple) and sugar on the physicochemical, amino acid, flavor, and sensory characteristics of pork bulgogi. Five marinades (sugar only, pineapple, apple, pineapple+sugar, apple+sugar (App+Sug)) were compared. Pineapple exhibited high sweetness, [...] Read more.
This study examined the effects of soy sauce-based marinades containing fruit extracts (pineapple, apple) and sugar on the physicochemical, amino acid, flavor, and sensory characteristics of pork bulgogi. Five marinades (sugar only, pineapple, apple, pineapple+sugar, apple+sugar (App+Sug)) were compared. Pineapple exhibited high sweetness, acidity, and protease activity, consequently enhancing essential amino acids but causing undesirable mushy texture due to excessive proteolysis. Meanwhile, apple enriched umami-related amino acids (Glu, Gln) and provided balanced organic acid and sugar profiles without structural degradation. HPLC confirmed pineapple was rich in sucrose and citric acid, while apple contained more fructose and malic acid. Fruit-containing marinades increased esters, alcohols, and Maillard compounds, while reducing lipid oxidation aldehydes, thereby contributing to improved aroma and oxidative stability. Sensory evaluation revealed App+Sug marinade achieved the highest scores in flavor, tenderness, chewiness, and overall preference, thus indicating synergistic effects of fruit acids and sugars. Conversely, pineapple-based marinades, despite strong tenderizing potential, were less palatable. Overall, App+Sug marinade provided the best balance of flavor, tenderness, and consumer acceptability, while pineapple requires controlled application to prevent excessive softening. Full article
(This article belongs to the Special Issue Advances in Meat Quality and Quality Control)
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28 pages, 2000 KB  
Review
Integrated Insights into Structural and Flavor Functions of Milk Fat in Cheese Systems: Implications for Fat Reduction and Replacement Strategies
by Khue Minh Tran, Oanh Thi Hoang and Lan Thi Nguyen
Dairy 2026, 7(3), 41; https://doi.org/10.3390/dairy7030041 - 5 Jun 2026
Viewed by 1332
Abstract
The increasing demand for sustainable and health-oriented dairy and alternative products has enhanced interest in reducing or modifying fat in cheese systems. However, such modifications often lead to undesirable changes in texture and flavor, highlighting the multifunctional roles of milk fat within the [...] Read more.
The increasing demand for sustainable and health-oriented dairy and alternative products has enhanced interest in reducing or modifying fat in cheese systems. However, such modifications often lead to undesirable changes in texture and flavor, highlighting the multifunctional roles of milk fat within the cheese matrix. Rather than serving solely as a compositional component, milk fat contributes fundamentally to structure organization and flavor development through its physicochemical properties, interactions with the protein network, and lipid-derived pathways. This review examines these roles from a mechanistic perspective and evaluates emerging lipid structuring approaches for texture modulation, while also discussing complementary approaches with potential to address flavor attributes. Collectively, it provides insights for rational formulation and guides future research toward the design of improved dairy and alternative cheese products. Full article
(This article belongs to the Section Milk Processing)
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30 pages, 12405 KB  
Article
Flavor Changes in Reduced-Salt Sour Meat During Synergistic Fermentation with Salt Substitutes and Lactobacillus plantarum SJ-4: Based on Microbial Community and Metabolomic Analyses
by Ning Liu, Ying Chen, Yuqian Guan, Lihua Shang, Chaoyue Yang, Cinan Li, Yuanyuan Liu, Qiujin Zhu and Ying Zhou
Foods 2026, 15(11), 1978; https://doi.org/10.3390/foods15111978 - 2 Jun 2026
Viewed by 445
Abstract
This study investigated the effects of Lactiplantibacillus plantarum SJ-4 inoculation, partial replacement of sodium chloride (NaCl) with potassium chloride (KCl) and calcium ascorbate (CaA), and their combined treatment on the fermentation quality of fermented pork sour meat. Microbial community and metabolomic analyses were [...] Read more.
This study investigated the effects of Lactiplantibacillus plantarum SJ-4 inoculation, partial replacement of sodium chloride (NaCl) with potassium chloride (KCl) and calcium ascorbate (CaA), and their combined treatment on the fermentation quality of fermented pork sour meat. Microbial community and metabolomic analyses were further integrated to explore the potential mechanisms related to flavor formation and quality changes. The combined treatment (LP + K-Ca group) improved the flavor profile, increased the contents of volatile compounds and free amino acids, reduced several undesirable flavor-related compounds, and contributed to better fermentation quality. Compared with the control group (C), total free amino acids and essential amino acids in the LP + K-Ca group increased by 4.95% and 22.71%, respectively, while the contents of undesirable compounds such as 2-nonenal, hypoxanthine, and ketones decreased by 73.65%, 73.40%, and 9.58%, respectively. Key flavor-related microorganisms included Macrococcus, Staphylococcus, and Lactiplantibacillus. These microorganisms are intricately linked to metabolic products such as amino acids, fatty acids, and organic acids, which may provide important precursors for volatile flavor formation. Overall, the combined treatment of 40% NaCl replacement with 24% KCl and 16% CaA, together with 2% L. plantarum SJ-4 inoculation, showed potential for improving flavor formation and fermentation quality in salt-reduced sour meat based on partial NaCl replacement. Full article
(This article belongs to the Section Meat)
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17 pages, 2199 KB  
Article
Effects of Accelerated Fermentation on the Chemical Composition and Quality of Beer
by Marek Zdaniewicz, Szymon Lekowski, Aleksander Poreda and Robert Duliński
Molecules 2026, 31(10), 1695; https://doi.org/10.3390/molecules31101695 - 17 May 2026
Viewed by 636
Abstract
The objective of this study was to examine the impact of using a rotary jet head (RJH) on the biosynthesis of byproducts of yeast metabolism and their role in shaping the flavor and aroma profile of bottom fermentation beer (lager style). The tests [...] Read more.
The objective of this study was to examine the impact of using a rotary jet head (RJH) on the biosynthesis of byproducts of yeast metabolism and their role in shaping the flavor and aroma profile of bottom fermentation beer (lager style). The tests were conducted on an industrial scale, with fermentation in 3800 hL fermentation tanks. Experiments were conducted in a minimum of six replicates. The main quality indicators, including ethanol concentration and pH, were analyzed, along with key volatile compounds such as acetaldehyde, esters, higher alcohols, and DMS. Additionally, beer samples—both those fermented using forced mixing and those produced conventionally—were subjected to sensory evaluation. The study found that RJH did not cause changes in either the final ethyl alcohol concentration (6.74% in both samples) or the pH measurement results. The rotary jet head increased synthesis of certain volatile components, such as fusel alcohols by 5% and acetate esters by 14% for ethyl acetate and by almost 12% for isoamyl acetate. On the other hand, a more than threefold (8.23 to 2.54 mg/L) decrease in the undesirable acetaldehyde was observed in samples fermented with forced mixing. The resulting beers exhibited statistically significant differences in chemical composition; however, sensory analysis did not reveal these differences. This finding underscores the efficacy of the rotary jet head in expediting the beer production process without compromising its sensory quality. Full article
(This article belongs to the Special Issue Recent Advances in Fermentation in Food Chemistry)
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22 pages, 16203 KB  
Article
Elucidating the Impact of Gamma Irradiation Treatment Prior to Aging on Light-Flavor Tartary Buckwheat Baijiu Flavor Profiles: A Multimodal Analysis Combining E-Nose, E-Tongue and HS-GC-IMS
by Zhiqiang Shi, Qing Li, Chen Xia, Yan Wan, Kun Hu, Zhiming Hu, Shengnan Zhong, Yuhan Yang, Yongqing Zhu, Peng Wei and Ke Li
Foods 2026, 15(8), 1441; https://doi.org/10.3390/foods15081441 - 21 Apr 2026
Cited by 1 | Viewed by 638
Abstract
This study comprehensively analyzed the effects of gamma irradiation (GI) on the flavor profile of aged light-flavor tartary buckwheat Baijiu (LTB) using E-nose, E-tongue, and high-sensitivity headspace–gas chromatography–ion mobility spectrometry (HS-GC-IMS). A total of 30 volatile organic compounds (VOCs) were identified, with concentrations [...] Read more.
This study comprehensively analyzed the effects of gamma irradiation (GI) on the flavor profile of aged light-flavor tartary buckwheat Baijiu (LTB) using E-nose, E-tongue, and high-sensitivity headspace–gas chromatography–ion mobility spectrometry (HS-GC-IMS). A total of 30 volatile organic compounds (VOCs) were identified, with concentrations showing significant dose-dependent correlations with GI treatment. Aging alone reduced harsh and pungent VOCs (e.g., 1-propanol, 2-methyl butanoic acid ethyl ester), while GI followed by aging further decreased undesirable compounds (e.g., butanal-D, pyrrolidine) and enhanced beneficial flavor components, such as 1,1-diethoxy ethane-D and butanoic acid propyl ester. Notably, this treatment partially restored 1-propanol, triethylamine, and 2-butanone-M, though their levels remained significantly lower than in newly brewed LTB, achieving a more balanced purity and flavor complexity. The significantly elevated levels of tetrahydrofuran-M/D, 1,1-diethoxy ethane-D, and cyclohexane in GI-treated aged LTB, along with their dose-dependent accumulation patterns, suggest their potential as reliable markers. Multivariate analysis confirmed that all three techniques (E-nose, E-tongue, and HS-GC-IMS) effectively differentiated LTB samples, with strong correlations between E-nose and HS-GC-IMS data, as well as between E-tongue and HS-GC-IMS results. This work provides flavor fingerprints and potential markers for gamma-irradiated LTB identification, while proposing an innovative technical approach for rapid flavor assessment of light-flavor Baijiu. Full article
(This article belongs to the Section Drinks and Liquid Nutrition)
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24 pages, 2989 KB  
Article
Sensory Profiling of Advanced Bulgarian Mutant Potato Lines After Steaming and Oven-Frying
by Dida Iserliyska, Emiliya Nacheva and Nasya Tomlekova
Agronomy 2026, 16(8), 826; https://doi.org/10.3390/agronomy16080826 - 17 Apr 2026
Viewed by 431
Abstract
Potato sensory quality is a key determinant of consumer acceptance and processing suitability; however, it remains insufficiently explored in Bulgarian potato breeding programs. This study aimed to characterize the sensory profiles of advanced Bulgarian mutant potato lines developed through induced mutagenesis, in comparison [...] Read more.
Potato sensory quality is a key determinant of consumer acceptance and processing suitability; however, it remains insufficiently explored in Bulgarian potato breeding programs. This study aimed to characterize the sensory profiles of advanced Bulgarian mutant potato lines developed through induced mutagenesis, in comparison with their parental genotypes and untreated controls, after steaming and oven-frying. A trained descriptive sensory panel evaluated attributes related to appearance, aroma, flavor, texture, taste, and aftertaste, and the resulting data were explored using principal component analysis (PCA). Steamed samples were mainly associated with potato identity, earthy and raw potato peel aromatics, and potato-like flavor, whereas oven-fried samples were more strongly associated with overall sweet impression, buttery, earthy, and potato flavors, together with nutty aftertaste. Texture-related attributes were expressed in both culinary preparations, while undesirable bitter, sour, and astringent aftertastes occurred less frequently and were mainly linked to specific genotypes rather than to the overall sensory profile. Exploratory PCA supported the visualization of genotype-related sensory tendencies across both datasets. Several mutant lines showed favorable sensory profiles aligned with desirable parental characteristics, whereas others were more often associated with less favorable attributes, including increased bitter and astringent aftertastes. Overall, steaming emphasized inherent potato like, earthy, and raw-related notes, whereas oven-frying enhanced color development, sweet–buttery flavor impressions, and richer texture expression. Full article
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21 pages, 2373 KB  
Article
Coated Betaine Improves Lamb Meat Quality and Flavor by Modulating Rumen Microbial Flora
by Shude Shi, Xiongxiong Li, Shangwu Ma, Yuzhu Sha, Yuling Qu and Shengguo Zhao
Animals 2026, 16(6), 970; https://doi.org/10.3390/ani16060970 - 20 Mar 2026
Viewed by 1095
Abstract
The sensory quality and flavor of lamb meat, critical to market competitiveness, are influenced by rumen microbial fermentation and dietary management strategies. Coated betaine (CBet), a rumen-protected methyl donor, exerts systemic nutritional regulation in ruminants. This study explored the effects of CBet supplementation [...] Read more.
The sensory quality and flavor of lamb meat, critical to market competitiveness, are influenced by rumen microbial fermentation and dietary management strategies. Coated betaine (CBet), a rumen-protected methyl donor, exerts systemic nutritional regulation in ruminants. This study explored the effects of CBet supplementation on lamb meat quality using 18 Dorset ♂ × Hu sheep ♀ F1 crossbred lambs, randomly assigned to either a control group (basal diet) or a 0.20% CBet-supplemented diet for 60 days (n = 9 per group). The results demonstrated that CBet significantly increased ruminal concentrations of total volatile fatty acids (TVFAs), acetic acid, propionic acid, and butyric acid (p < 0.05). Additionally, CBet supplementation enhanced muscle redness (a*), crude fat, crude ash, heptadecanoic acid (C17:0), and tricosanoic acid (C23:0) (p < 0.05) while decreasing shear force and the concentration of cis-13,16-docosadienoic acid (C22:2) (p < 0.05). Furthermore, CBet elevated characteristic flavor compounds (e.g., nonanal) and their relative odor activity values (ROAVs), and decreased undesirable odors (e.g., dodecanal) (p < 0.05). As illustrated in the graphical abstract, these improvements were mediated through regulatory effects of CBet on rumen microbiota composition, muscle fatty acids, amino acids, and volatile flavor compounds. Specifically, CBet significantly increased the relative abundances of Firmicutes, Proteobacteria, Prevotella, and Bifidobacterium in the rumen (p < 0.05) and altered the Firmicutes/Bacteroidota ratio. In conclusion, dietary supplementation with 0.20% CBet effectively enhances lamb meat quality and flavor, effects closely associated with changes in the abundance of key ruminal microbial taxa. Full article
(This article belongs to the Section Animal Nutrition)
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19 pages, 3781 KB  
Article
Honeysuckle as a Bio-Enhancer in Monascus purpureus Fermentation: Synergistic Improvement of Monacolin K Yield and Flavor Complexity
by Arzugul Ablimit, Yike Zhai, Mengxue Chen, Qing Sun, Wenbo Liu, Duchen Zhai, Lichao Dong, Ang Huang, Baoguo Sun, Chengtao Wang and Chan Zhang
Foods 2026, 15(3), 560; https://doi.org/10.3390/foods15030560 - 4 Feb 2026
Cited by 1 | Viewed by 865
Abstract
Recently, co-fermentation of functional medicinal plants with fungi has emerged as a promising strategy to enhance the overall quality of fermented foods. Monascus fermentation products have long been confronted with bottlenecks in both functionality and palatability, such as low monacolin K (MK) yield [...] Read more.
Recently, co-fermentation of functional medicinal plants with fungi has emerged as a promising strategy to enhance the overall quality of fermented foods. Monascus fermentation products have long been confronted with bottlenecks in both functionality and palatability, such as low monacolin K (MK) yield and poor flavor. Therefore, this study investigated the effects of co-fermenting Monascus purpureus with honeysuckle (Lonicera japonica Thunb.) on the bioactive metabolites and volatile flavor compounds of the fermented product. Through single-factor optimization, the addition of 0.8 g/L honeysuckle powder was identified as optimal, resulting in a 1.54-fold increase in MK yield compared to the control. Additionally, nine key genes were upregulated in the MK biosynthetic cluster (mokA–mokI). Co-fermentation also significantly increased the total flavonoid and polyphenol contents by 3.93-and 2.01-fold, respectively, and enhanced in vitro antioxidant activity. Gas chromatography-mass spectrometry analysis revealed that ketones, esters, and alcohols were the dominant volatile compounds. Orthogonal partial least squares-discriminant analysis identified 11 differential volatile compounds (variable importance in projection > 1), indicating a substantial shift in the flavor profile toward more desirable notes, with a reduction in undesirable aldehydes. These findings demonstrate that honeysuckle co-fermentation enhances the biofunctional properties of M. purpureus fermentation products and improves their sensory appeal, providing a viable bioprocessing strategy for developing high-value Monascus-based functional foods or ingredients. Full article
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19 pages, 2349 KB  
Article
Technological Optimization of Fermented Siniperca chuatsi Fish Processing Focused on Formation of Garlic Clove-Structural Muscle Flakes and Flavor Profiles
by Zhangqin Lai, Mi Tang, Hai Chen, Xiaoyi Tan and Yuhao Zhang
Foods 2026, 15(3), 460; https://doi.org/10.3390/foods15030460 - 28 Jan 2026
Viewed by 788
Abstract
The edible and sensory quality of fermented fish products, particularly the formation of garlic clove-structured muscle flakes (GCMF), play critical roles in consumer acceptance and consumption. Herein, aiming to obtain the optimal technical process, this study systematically explored the generation and dynamic evolution [...] Read more.
The edible and sensory quality of fermented fish products, particularly the formation of garlic clove-structured muscle flakes (GCMF), play critical roles in consumer acceptance and consumption. Herein, aiming to obtain the optimal technical process, this study systematically explored the generation and dynamic evolution of GCMF structure of fermented mandarin fish, especially the integrity and peeling properties of GCMF, which would profoundly determine the textural properties of fish flesh. Meanwhile, flavor profiles were also concentrated during the formation of GCMF. Specifically, our results showed that the optimal fermentation conditions were 3% salt concentration and 7 days of fermentation at 7 °C. Under these conditions, the physicochemical indicators (moisture, pH, TVB-N) of the fermented fish remained within reasonable ranges and the sensory score; peeling integrity of GCMF and the texture properties reached the highest values. In addition, with the increase in fermentation time, the content of undesirable flavor compounds, especially nonanal and 1-octen-3-ol, gradually decreased. Overall, these findings provide a theoretical framework for the evaluation of GCMF structure and for understanding flavor development in fermented mandarin fish, thereby laying a foundation for improved quality control of fermented fish products. Full article
(This article belongs to the Section Food Physics and (Bio)Chemistry)
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24 pages, 4531 KB  
Article
Combination of GC-IMS and Nano-LC/HRMS Reveals the Mechanism of Superheated Steam Glycosylation Modification in Improving Oyster Peptide Flavor
by Li-Hong Wang, Jun-Wei Zhang, Zong-Cai Tu, Xiao-Mei Sha, Yong-Yan Huang and Zi-Zi Hu
Foods 2026, 15(2), 236; https://doi.org/10.3390/foods15020236 - 9 Jan 2026
Viewed by 740
Abstract
This study investigated the effect of superheated steam (SS) assisted glycosylation modification on the flavor profile of oyster peptides (OP), and explored the correlation between key flavor compounds and glycosylation degree using Gas Chromatography–Ion Mobility Spectrometry (GC-IMS) and nano-scale Liquid Chromatography coupled with [...] Read more.
This study investigated the effect of superheated steam (SS) assisted glycosylation modification on the flavor profile of oyster peptides (OP), and explored the correlation between key flavor compounds and glycosylation degree using Gas Chromatography–Ion Mobility Spectrometry (GC-IMS) and nano-scale Liquid Chromatography coupled with High-Resolution Mass Spectrometry (nano-LC/HRMS). The results indicated that SS treatment accelerated the glycosylation process, reduced free amino groups level, and distinguished their unique flavor through E-nose. GC-IMS analysis detected 64 signal peaks including 13 aldehydes, 6 ketones, 7 esters, 6 alcohols, 2 acids, 2 furans and 5 other substances. And it was revealed that SS-mediated glycosylation treatment reduced the levels of fishy odorants like Heptanal and Nonanal, while promoting the pleasant-smelling alcohols and esters. In addition, Pearson correlation showed a positive correlation between excessive glycation and the increase in aldehydes, which might cause the recurrence of undesirable fishy notes. Further nano-LC/HRMS analysis revealed that arginine and lysine acted as the main sites for glycosylation modification. Notably, glycosylated peptides such as KAFGHENEALVRK, DSRAATSPGELGVTIEGPKE, generated by mild SS treatment could convert into ketones and pyrazines in subsequent reactions, thereby contributing to overall sensory enhancement. In conclusion, SS treatment at 110 °C for 1 min significantly improved the flavor quality of OP and sustains improvement in subsequent stages, providing theoretical support for flavor optimization of oyster peptides. Full article
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18 pages, 26376 KB  
Article
Comparative Study on the Nutritional, Textural and Flavor Profiles of Mandarin Fish (Siniperca chuatsi) in Industrialized Recirculating and Traditional Pond Aquaculture Systems
by Weifa Su, Rongfeng Wu, Hongjie Fan, Gaohua Yao, Wei Liu, Shimi Li, Ningyu Zhu, Qianrong Liang, Xueyan Ding, Bin Zheng, Xingwei Xiang and Fan Zhou
Foods 2025, 14(23), 4028; https://doi.org/10.3390/foods14234028 - 24 Nov 2025
Cited by 2 | Viewed by 1831
Abstract
Mandarin fish (Siniperca chuatsi) is a highly valued freshwater species in China, owing to its high-quality meat and economic importance. This study comparatively evaluated the effects of an industrialized recirculating aquaculture system (RAS) and traditional pond aquaculture system (TPAS) on the [...] Read more.
Mandarin fish (Siniperca chuatsi) is a highly valued freshwater species in China, owing to its high-quality meat and economic importance. This study comparatively evaluated the effects of an industrialized recirculating aquaculture system (RAS) and traditional pond aquaculture system (TPAS) on the muscle quality and further explored the role of gut microbiota in muscle quality regulation. Our results showed that the RAS resulted in superior textural properties, with meat that was significantly more tender and elastic. The RAS also promoted higher muscle protein and reduced lipid levels. Notably, the RAS elevated sweet-tasting amino acids (Gly and Pro) while suppressing bitter amino acids (His). Electronic nose and GC-iMS analyses revealed distinct flavor compound profiles between the two systems, and the RAS enriched desirable volatiles (esters and alcohols) while suppressing aldehydes (e.g., nonanal and heptanal) associated with off-flavors. Gut microbiota profiling indicated higher diversity and enriched beneficial genera (e.g., Cetobacterium, Lactobacillus) in RAS-treated fish. We found that the Cetobacterium in the RAS group showed a significant positive correlation with sweet amino acids and pleasant flavor substances (such as esters, alcohols), while exhibiting a negative correlation with undesirable flavor precursors (such as certain aldehydes). This finding contributes to the sustainable and high-efficiency advancement of intensive Siniperca chuatsi aquaculture. Full article
(This article belongs to the Section Food Quality and Safety)
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